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How two neutrino superbeam experiments do better than one

High Energy Physics - Phenomenology 2009-09-15 v2

Abstract

We examine the use of two superbeam neutrino oscillation experiments with baselines \lsim1000\lsim 1000 km to resolve parameter degeneracies inherent in the three-neutrino analysis of such experiments. We find that with appropriate choices of neutrino energies and baselines two experiments with different baselines can provide a much better determination of the neutrino mass ordering than a single experiment alone. Two baselines are especially beneficial when the mass scale for solar neutrino oscillations δmsol2\delta m^2_{\rm sol} is \gsim5×105\gsim 5\times10^{-5} eV2^2. We also examine CP violation sensitivity and the resolution of other parameter degeneracies. We find that the combined data of superbeam experiments with baselines of 295 and 900 km can provide sensitivity to both the neutrino mass ordering and CP violation for sin22θ13\sin^22\theta_{13} down to 0.03 for δmatm23×103|\delta m^2_{\rm atm}| \simeq 3\times10^{-3} eV2^2. It would be highly advantageous to have a 10% determination of δmatm2|\delta m^2_{\rm atm}| before the beam energies and baselines are finalized, although if δmatm2|\delta m^2_{\rm atm}| is not that well known, the neutrino energies and baselines can be chosen to give fairly good sensitivity for a range of δmatm2|\delta m^2_{\rm atm}|.

Keywords

Cite

@article{arxiv.hep-ph/0210428,
  title  = {How two neutrino superbeam experiments do better than one},
  author = {V. Barger and D. Marfatia and K. Whisnant},
  journal= {arXiv preprint arXiv:hep-ph/0210428},
  year   = {2009}
}

Comments

18 pages, 6 PS figures, added references and revised discussion

R2 v1 2026-07-22T13:44:13.700Z